Mercurial > dropbear
annotate libtommath/tommath.out @ 296:6b41e2cbf071 dbclient-netcat-alike
A hack to make dbclient to tcp forwarding netcat style.
eg
./dbclient -i testkey -L 1234:remotehost:remoteport tunnelhost
will ssh to tunnelhost (using testkey, there's no way to ask for a password)
and then tcpfwd to remotehost:remoteport on stdin/stdout.
There's no way to give a cmdline password, so -i for a keyfile will have to do.
Yet another reason for agent forwarding.
The 1234 is a dummy var, I think it has to be a valid portnumber though.
author | Matt Johnston <matt@ucc.asn.au> |
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date | Tue, 21 Mar 2006 16:16:41 +0000 |
parents | eed26cff980b |
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284
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1 \BOOKMARK [0][-]{chapter.1}{Introduction}{} |
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2 \BOOKMARK [1][-]{section.1.1}{Multiple Precision Arithmetic}{chapter.1} |
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3 \BOOKMARK [2][-]{subsection.1.1.1}{What is Multiple Precision Arithmetic?}{section.1.1} |
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4 \BOOKMARK [2][-]{subsection.1.1.2}{The Need for Multiple Precision Arithmetic}{section.1.1} |
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5 \BOOKMARK [2][-]{subsection.1.1.3}{Benefits of Multiple Precision Arithmetic}{section.1.1} |
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6 \BOOKMARK [1][-]{section.1.2}{Purpose of This Text}{chapter.1} |
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7 \BOOKMARK [1][-]{section.1.3}{Discussion and Notation}{chapter.1} |
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8 \BOOKMARK [2][-]{subsection.1.3.1}{Notation}{section.1.3} |
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9 \BOOKMARK [2][-]{subsection.1.3.2}{Precision Notation}{section.1.3} |
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10 \BOOKMARK [2][-]{subsection.1.3.3}{Algorithm Inputs and Outputs}{section.1.3} |
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11 \BOOKMARK [2][-]{subsection.1.3.4}{Mathematical Expressions}{section.1.3} |
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12 \BOOKMARK [2][-]{subsection.1.3.5}{Work Effort}{section.1.3} |
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13 \BOOKMARK [1][-]{section.1.4}{Exercises}{chapter.1} |
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14 \BOOKMARK [1][-]{section.1.5}{Introduction to LibTomMath}{chapter.1} |
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15 \BOOKMARK [2][-]{subsection.1.5.1}{What is LibTomMath?}{section.1.5} |
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16 \BOOKMARK [2][-]{subsection.1.5.2}{Goals of LibTomMath}{section.1.5} |
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17 \BOOKMARK [1][-]{section.1.6}{Choice of LibTomMath}{chapter.1} |
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18 \BOOKMARK [2][-]{subsection.1.6.1}{Code Base}{section.1.6} |
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19 \BOOKMARK [2][-]{subsection.1.6.2}{API Simplicity}{section.1.6} |
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20 \BOOKMARK [2][-]{subsection.1.6.3}{Optimizations}{section.1.6} |
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21 \BOOKMARK [2][-]{subsection.1.6.4}{Portability and Stability}{section.1.6} |
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22 \BOOKMARK [2][-]{subsection.1.6.5}{Choice}{section.1.6} |
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23 \BOOKMARK [0][-]{chapter.2}{Getting Started}{} |
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24 \BOOKMARK [1][-]{section.2.1}{Library Basics}{chapter.2} |
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25 \BOOKMARK [1][-]{section.2.2}{What is a Multiple Precision Integer?}{chapter.2} |
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26 \BOOKMARK [2][-]{subsection.2.2.1}{The mp\137int Structure}{section.2.2} |
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27 \BOOKMARK [1][-]{section.2.3}{Argument Passing}{chapter.2} |
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28 \BOOKMARK [1][-]{section.2.4}{Return Values}{chapter.2} |
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29 \BOOKMARK [1][-]{section.2.5}{Initialization and Clearing}{chapter.2} |
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30 \BOOKMARK [2][-]{subsection.2.5.1}{Initializing an mp\137int}{section.2.5} |
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31 \BOOKMARK [2][-]{subsection.2.5.2}{Clearing an mp\137int}{section.2.5} |
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32 \BOOKMARK [1][-]{section.2.6}{Maintenance Algorithms}{chapter.2} |
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33 \BOOKMARK [2][-]{subsection.2.6.1}{Augmenting an mp\137int's Precision}{section.2.6} |
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34 \BOOKMARK [2][-]{subsection.2.6.2}{Initializing Variable Precision mp\137ints}{section.2.6} |
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35 \BOOKMARK [2][-]{subsection.2.6.3}{Multiple Integer Initializations and Clearings}{section.2.6} |
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36 \BOOKMARK [2][-]{subsection.2.6.4}{Clamping Excess Digits}{section.2.6} |
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37 \BOOKMARK [0][-]{chapter.3}{Basic Operations}{} |
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38 \BOOKMARK [1][-]{section.3.1}{Introduction}{chapter.3} |
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39 \BOOKMARK [1][-]{section.3.2}{Assigning Values to mp\137int Structures}{chapter.3} |
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40 \BOOKMARK [2][-]{subsection.3.2.1}{Copying an mp\137int}{section.3.2} |
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41 \BOOKMARK [2][-]{subsection.3.2.2}{Creating a Clone}{section.3.2} |
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42 \BOOKMARK [1][-]{section.3.3}{Zeroing an Integer}{chapter.3} |
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43 \BOOKMARK [1][-]{section.3.4}{Sign Manipulation}{chapter.3} |
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44 \BOOKMARK [2][-]{subsection.3.4.1}{Absolute Value}{section.3.4} |
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45 \BOOKMARK [2][-]{subsection.3.4.2}{Integer Negation}{section.3.4} |
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46 \BOOKMARK [1][-]{section.3.5}{Small Constants}{chapter.3} |
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47 \BOOKMARK [2][-]{subsection.3.5.1}{Setting Small Constants}{section.3.5} |
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48 \BOOKMARK [2][-]{subsection.3.5.2}{Setting Large Constants}{section.3.5} |
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49 \BOOKMARK [1][-]{section.3.6}{Comparisons}{chapter.3} |
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50 \BOOKMARK [2][-]{subsection.3.6.1}{Unsigned Comparisions}{section.3.6} |
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51 \BOOKMARK [2][-]{subsection.3.6.2}{Signed Comparisons}{section.3.6} |
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52 \BOOKMARK [0][-]{chapter.4}{Basic Arithmetic}{} |
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53 \BOOKMARK [1][-]{section.4.1}{Introduction}{chapter.4} |
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54 \BOOKMARK [1][-]{section.4.2}{Addition and Subtraction}{chapter.4} |
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55 \BOOKMARK [2][-]{subsection.4.2.1}{Low Level Addition}{section.4.2} |
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56 \BOOKMARK [2][-]{subsection.4.2.2}{Low Level Subtraction}{section.4.2} |
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57 \BOOKMARK [2][-]{subsection.4.2.3}{High Level Addition}{section.4.2} |
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58 \BOOKMARK [2][-]{subsection.4.2.4}{High Level Subtraction}{section.4.2} |
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59 \BOOKMARK [1][-]{section.4.3}{Bit and Digit Shifting}{chapter.4} |
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60 \BOOKMARK [2][-]{subsection.4.3.1}{Multiplication by Two}{section.4.3} |
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61 \BOOKMARK [2][-]{subsection.4.3.2}{Division by Two}{section.4.3} |
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62 \BOOKMARK [1][-]{section.4.4}{Polynomial Basis Operations}{chapter.4} |
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63 \BOOKMARK [2][-]{subsection.4.4.1}{Multiplication by x}{section.4.4} |
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64 \BOOKMARK [2][-]{subsection.4.4.2}{Division by x}{section.4.4} |
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65 \BOOKMARK [1][-]{section.4.5}{Powers of Two}{chapter.4} |
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66 \BOOKMARK [2][-]{subsection.4.5.1}{Multiplication by Power of Two}{section.4.5} |
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67 \BOOKMARK [2][-]{subsection.4.5.2}{Division by Power of Two}{section.4.5} |
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68 \BOOKMARK [2][-]{subsection.4.5.3}{Remainder of Division by Power of Two}{section.4.5} |
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69 \BOOKMARK [0][-]{chapter.5}{Multiplication and Squaring}{} |
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70 \BOOKMARK [1][-]{section.5.1}{The Multipliers}{chapter.5} |
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71 \BOOKMARK [1][-]{section.5.2}{Multiplication}{chapter.5} |
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72 \BOOKMARK [2][-]{subsection.5.2.1}{The Baseline Multiplication}{section.5.2} |
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73 \BOOKMARK [2][-]{subsection.5.2.2}{Faster Multiplication by the ``Comba'' Method}{section.5.2} |
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74 \BOOKMARK [2][-]{subsection.5.2.3}{Polynomial Basis Multiplication}{section.5.2} |
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75 \BOOKMARK [2][-]{subsection.5.2.4}{Karatsuba Multiplication}{section.5.2} |
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76 \BOOKMARK [2][-]{subsection.5.2.5}{Toom-Cook 3-Way Multiplication}{section.5.2} |
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77 \BOOKMARK [2][-]{subsection.5.2.6}{Signed Multiplication}{section.5.2} |
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78 \BOOKMARK [1][-]{section.5.3}{Squaring}{chapter.5} |
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79 \BOOKMARK [2][-]{subsection.5.3.1}{The Baseline Squaring Algorithm}{section.5.3} |
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80 \BOOKMARK [2][-]{subsection.5.3.2}{Faster Squaring by the ``Comba'' Method}{section.5.3} |
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81 \BOOKMARK [2][-]{subsection.5.3.3}{Polynomial Basis Squaring}{section.5.3} |
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82 \BOOKMARK [2][-]{subsection.5.3.4}{Karatsuba Squaring}{section.5.3} |
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83 \BOOKMARK [2][-]{subsection.5.3.5}{Toom-Cook Squaring}{section.5.3} |
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84 \BOOKMARK [2][-]{subsection.5.3.6}{High Level Squaring}{section.5.3} |
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85 \BOOKMARK [0][-]{chapter.6}{Modular Reduction}{} |
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86 \BOOKMARK [1][-]{section.6.1}{Basics of Modular Reduction}{chapter.6} |
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87 \BOOKMARK [1][-]{section.6.2}{The Barrett Reduction}{chapter.6} |
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88 \BOOKMARK [2][-]{subsection.6.2.1}{Fixed Point Arithmetic}{section.6.2} |
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89 \BOOKMARK [2][-]{subsection.6.2.2}{Choosing a Radix Point}{section.6.2} |
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90 \BOOKMARK [2][-]{subsection.6.2.3}{Trimming the Quotient}{section.6.2} |
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91 \BOOKMARK [2][-]{subsection.6.2.4}{Trimming the Residue}{section.6.2} |
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92 \BOOKMARK [2][-]{subsection.6.2.5}{The Barrett Algorithm}{section.6.2} |
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93 \BOOKMARK [2][-]{subsection.6.2.6}{The Barrett Setup Algorithm}{section.6.2} |
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94 \BOOKMARK [1][-]{section.6.3}{The Montgomery Reduction}{chapter.6} |
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95 \BOOKMARK [2][-]{subsection.6.3.1}{Digit Based Montgomery Reduction}{section.6.3} |
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96 \BOOKMARK [2][-]{subsection.6.3.2}{Baseline Montgomery Reduction}{section.6.3} |
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97 \BOOKMARK [2][-]{subsection.6.3.3}{Faster ``Comba'' Montgomery Reduction}{section.6.3} |
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98 \BOOKMARK [2][-]{subsection.6.3.4}{Montgomery Setup}{section.6.3} |
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99 \BOOKMARK [1][-]{section.6.4}{The Diminished Radix Algorithm}{chapter.6} |
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100 \BOOKMARK [2][-]{subsection.6.4.1}{Choice of Moduli}{section.6.4} |
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101 \BOOKMARK [2][-]{subsection.6.4.2}{Choice of k}{section.6.4} |
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102 \BOOKMARK [2][-]{subsection.6.4.3}{Restricted Diminished Radix Reduction}{section.6.4} |
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103 \BOOKMARK [2][-]{subsection.6.4.4}{Unrestricted Diminished Radix Reduction}{section.6.4} |
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104 \BOOKMARK [1][-]{section.6.5}{Algorithm Comparison}{chapter.6} |
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105 \BOOKMARK [0][-]{chapter.7}{Exponentiation}{} |
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106 \BOOKMARK [1][-]{section.7.1}{Exponentiation Basics}{chapter.7} |
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107 \BOOKMARK [2][-]{subsection.7.1.1}{Single Digit Exponentiation}{section.7.1} |
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108 \BOOKMARK [1][-]{section.7.2}{k-ary Exponentiation}{chapter.7} |
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109 \BOOKMARK [2][-]{subsection.7.2.1}{Optimal Values of k}{section.7.2} |
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110 \BOOKMARK [2][-]{subsection.7.2.2}{Sliding-Window Exponentiation}{section.7.2} |
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111 \BOOKMARK [1][-]{section.7.3}{Modular Exponentiation}{chapter.7} |
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112 \BOOKMARK [2][-]{subsection.7.3.1}{Barrett Modular Exponentiation}{section.7.3} |
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113 \BOOKMARK [1][-]{section.7.4}{Quick Power of Two}{chapter.7} |
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114 \BOOKMARK [0][-]{chapter.8}{Higher Level Algorithms}{} |
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115 \BOOKMARK [1][-]{section.8.1}{Integer Division with Remainder}{chapter.8} |
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116 \BOOKMARK [2][-]{subsection.8.1.1}{Quotient Estimation}{section.8.1} |
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117 \BOOKMARK [2][-]{subsection.8.1.2}{Normalized Integers}{section.8.1} |
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118 \BOOKMARK [2][-]{subsection.8.1.3}{Radix- Division with Remainder}{section.8.1} |
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119 \BOOKMARK [1][-]{section.8.2}{Single Digit Helpers}{chapter.8} |
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120 \BOOKMARK [2][-]{subsection.8.2.1}{Single Digit Addition and Subtraction}{section.8.2} |
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121 \BOOKMARK [2][-]{subsection.8.2.2}{Single Digit Multiplication}{section.8.2} |
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122 \BOOKMARK [2][-]{subsection.8.2.3}{Single Digit Division}{section.8.2} |
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123 \BOOKMARK [2][-]{subsection.8.2.4}{Single Digit Root Extraction}{section.8.2} |
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124 \BOOKMARK [1][-]{section.8.3}{Random Number Generation}{chapter.8} |
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125 \BOOKMARK [1][-]{section.8.4}{Formatted Representations}{chapter.8} |
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126 \BOOKMARK [2][-]{subsection.8.4.1}{Reading Radix-n Input}{section.8.4} |
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127 \BOOKMARK [2][-]{subsection.8.4.2}{Generating Radix-n Output}{section.8.4} |
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128 \BOOKMARK [0][-]{chapter.9}{Number Theoretic Algorithms}{} |
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129 \BOOKMARK [1][-]{section.9.1}{Greatest Common Divisor}{chapter.9} |
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130 \BOOKMARK [2][-]{subsection.9.1.1}{Complete Greatest Common Divisor}{section.9.1} |
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131 \BOOKMARK [1][-]{section.9.2}{Least Common Multiple}{chapter.9} |
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132 \BOOKMARK [1][-]{section.9.3}{Jacobi Symbol Computation}{chapter.9} |
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133 \BOOKMARK [2][-]{subsection.9.3.1}{Jacobi Symbol}{section.9.3} |
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134 \BOOKMARK [1][-]{section.9.4}{Modular Inverse}{chapter.9} |
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135 \BOOKMARK [2][-]{subsection.9.4.1}{General Case}{section.9.4} |
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136 \BOOKMARK [1][-]{section.9.5}{Primality Tests}{chapter.9} |
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137 \BOOKMARK [2][-]{subsection.9.5.1}{Trial Division}{section.9.5} |
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propagate from branch 'au.asn.ucc.matt.ltm.dropbear' (head 6c790cad5a7fa866ad062cb3a0c279f7ba788583)
Matt Johnston <matt@ucc.asn.au>
parents:
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changeset
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138 \BOOKMARK [2][-]{subsection.9.5.2}{The Fermat Test}{section.9.5} |
eed26cff980b
propagate from branch 'au.asn.ucc.matt.ltm.dropbear' (head 6c790cad5a7fa866ad062cb3a0c279f7ba788583)
Matt Johnston <matt@ucc.asn.au>
parents:
diff
changeset
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139 \BOOKMARK [2][-]{subsection.9.5.3}{The Miller-Rabin Test}{section.9.5} |